A lighting system includes modular junction boxes and/or modular led driver junction boxes with quick connect led drivers. The modular junction boxes and/or modular led driver junction boxes are attached to a ceiling mount to support or suspend an led light fixture. The led light fixture is suspended from the modular junction boxes and/or modular led driver junction boxes through suspension cables that can includes a power suspension cable to power to the led light fixture. The suspension cables are attached to the modular junction boxes and/or modular led driver junction boxes through leveling gantry mechanisms for leveling the light fixture. In an embedment of the invention a lighting system includes a low-profile angled led driver junction box.
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1. A lighting system comprising:
a) led driver junction box with junction box portion;
b) a gantry mechanism attached to and positioned within the junction box portion, the gantry mechanism having a bracket portion that attaches to the junction box portion of the led driver junction box and a hook plate with a tab structure that fits through a slot on the bracket portion and has a hole for receiving a threaded structure;
c) an led light fixture with a plurality of led arrays; and
d) a suspension cable that is a power feed for powering the plurality of led arrays with low-voltage direct current from an led driver, wherein the suspension cable attaches to the hook plate and the led light fixture and wherein turning the threaded structure moves the hook plate up or down thereby moving the led light fixture up or down.
7. A lighting system comprising:
a) led driver junction box with junction box portion with a receptacle opening and an driver box portion that is volume communication with the junction box portion;
b) gantry leveling mechanisms, each with a bracket portion that attaches to and is positioned within the junction box portion of the led driver junction box and a hook plate with a tab structure that fits through a slot on the bracket portion and has a hole for receiving a threaded structure;
c) an led light fixture with a plurality of led arrays; and
d) suspension cables that attach to each of the hook plate and the led light fixture, wherein at least on to the suspension cables provides a power feed for powering the plurality of led arrays with low-voltage direct current from one or more modular led driver circuits and wherein turning the threaded structure moves the hook plate up or down and thereby moving the led light fixture up or down.
14. A lighting system comprising:
a) a low-profile led driver box with junction box portion with a receptacle opening and an driver box portion that is volume communication with the junction box portion;
b) an led light fixture with a plurality of led arrays;
c) a suspension mechanism comprising:
I) gantry leveling mechanisms each with a bracket portion that attaches to and positioned within the junction box portion of the led driver junction box and a hook plate with a tab structure that fits through a slot on the bracket portion and has a hole for receiving a threaded structure; and
ii) suspension cables that detachable couple to the led light fixture, wherein at least one of the suspension cables provides a power feed for powering the plurality of led arrays with low-voltage direct current from one or more modular led driver circuits and wherein turning the threaded structure moves the hook plate up or down and thereby moves portions of the attached led light fixture up or down; and
d) a controller for proving independent dimming control of the upward lighting and downward lighting emitted from the linear arrays of LEDs.
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This application is a continuation-in-part of co-pending U.S. patent application Ser. No. 13/987,792, filed on Sep. 3, 2013, and titled “LED LIGHTING SYSTEMS”, which claims priority under 35 U.S.C. § 119(e) from the U.S. provisional patent application Ser. No. 61/743,310, filed on Sep. 4, 2012, and titled “LED DRIVER JUNCTION BOX FOR LED LIGHT FIXTURES.” This application also claims priority under 35 U.S.C. § 119(e) from the U.S. provisional patent application Ser. No. 62/603,619, filed on Jun. 6, 2017, and titled “LED DRIVER JUNCTION BOX WITH LEVELING MECHANISM.” The co-pending U.S. patent application Ser. No. 13/987,792, filed on Sep. 3, 2013, and titled “LED LIGHTING SYSTEMS”, the provisional patent application Ser. No. 61/743,310, filed on Sep. 4, 2012, and titled “LED DRIVER JUNCTION BOX FOR LED LIGHT FIXTURES” and the U.S. provisional patent application Ser. No. 62/603,619, filed on Jun. 6, 2017, and titled “LED DRIVER JUNCTION BOX WITH LEVELING MECHANISM” are all hereby incorporated by reference.
This invention relates to lighting systems. More specifically, this invention relates to Light Emitting Diode (LED) devices and systems.
A light-emitting diode (LED) is a semiconductor diode that emits light when an electrical current is applied in the forward direction of the device, such as in a simple LED circuit.
The device is fabricated from layers of silicon and seeded with atoms of phosphorus, germanium, arsenic or other rare-earth elements. The layers of the device are called the die and the junction between the materials is where the light is generated. The electricity enters from one side of the die and exits out the other. As the current passes through the LED device, the materials that makes up the junction react and light is emitted.
LEDs are widely used as indicator lights on electronic devices and increasingly in higher power applications such as flashlights and area lighting. A LED is usually a small area (less than 1 mm2) light source, often with optics added to the chip to shape its radiation pattern and assist in reflection. The color of the emitted light depends on the composition and condition of the semiconducting material used, and can be infrared, visible, or ultraviolet.
The present invention is directed to a LED lighting system. The system includes a recessed or a low-profile LED driver box. The LED driver box houses one or more LED drivers or driver circuits that power one or more LED light fixtures. In accordance with the embodiments of the invention, the LED drivers are vertically stacked LED or horizontally stacked LED driver within the LED driver box. The LED drivers individually or collectively provides 40 watts of power or more. The LED driver box includes one or more service plates or service doors to access and/or service the LED drivers and any electrical connections therein.
Preferably, the LED drivers are coupled to a load circuit and one or more light fixture through quick-lock or snap connectors, such that the LED drivers can be readily replaced without rewiring. In further embodiments of the invention, a battery provides back-up power to an LED light fixture couple to the LED driver box in the event of a power failure.
The system of the present invention also includes a mechanism to attach and secure the driver box to one or more T-bar supports of a suspended ceiling and/or one or more ceiling joists. For example, the system includes one or more expandable horizontal support bars that attach to the T-bar supports or the ceiling joists. The LED driver box can also include a ventricle support bracket for attaching to a building structure to provide additional vertical support for the LED driver box and an LED light fixture attached to the LED driver box.
In accordance with the embodiments of the invention, the LED driver box is configured to suspend one or more LED light fixtures through one or more suspension cables. The system is preferably adaptable for having one to four suspension cables for each LED driver box. Preferably, at least one of the suspension cables is also a power feed for powering an LED light fixture, referred to herein as a power-feed suspension mechanism. In accordance with the embodiments of the invention a power-feed suspension mechanism includes cables with at least one cable having direct current positive conductor and at least one cable having a direct current negative conductor.
The suspension system of the present invention includes one or more gantry leveling mechanisms that attache to a junction box or an LED driver box and one or more corresponding suspension cables. In operation suspension cables are attached to the gantry leveling mechanisms through suspension cable end attachments and the gantry leveling mechanisms are adjusted to level an attached or suspended light fixture.
In a particular embedment of the invention, an angled LED driver junction box includes a junction box portion that is preferably rectangular. A receptacle opening of the junction box portion is configured to be flush with a ceiling structure when the angled LED driver junction box is installed. The angled LED driver junction box also includes a rectangular elongated driver box portion that is in volume communication with the junction box portion. The rectangular elongated driver box portion extends out from the junction box portion at an angle relative to the plane of the receptacle opening of the junction box portion, such that elongated modular LED driver circuits (that are as long as the rectangular elongated driver box portion is deep) are capable of being installed into the in the rectangular elongated driver box portion through the receptacle opening of the junction box portion.
With the angled LED driver junction box installed, the rectangular elongated driver box portion is preferably positioned with a bottom surface and a top surface of the rectangular elongated driver box portion angled between 40 and 20 degree relative to the ceiling structure and/or the plane of the receptacle opening of the junction box portion. The rectangular elongated driver box portion is configured to hold one or two modular LED driver circuits. The junction box portion of the LED driver box preferably includes one or more gantry leveling mechanisms, such as described below.
The gantry leveling mechanism of the present invention includes a bracket portion that attaches to a junction box or junction box portion of an LED driver box, such as described above. The gantry leveling mechanism also includes a hook plate or support portion that allows a suspension cable to be coupled to gantry leveling mechanism. The hook plate or support plate portion includes a slotted and curved finger structure that a support cable is fitted through and support thereon through by a suspension cable end attachment. The hook plate or support plate portion also includes a tab structure with a threaded hole. The tab structure is configured to fit through a slot formed between two bar structures on the bracket portion.
The gantry leveling mechanism also has a treaded screw feature that fits through a holed on a bottom surface of the bracket portion and threads into the threaded hole on the tab structure of the hook plate or support plate portion. The threaded screw feature then terminates through a treaded nut feature on a top surface of the bracket portion.
In operation the threaded screw feature is turned cock-wise or counter clock-wise from a tool fitted end of the threaded screw feature at or near the bottom surface of the bracket portion using, for example, a screw driver or allen wrench, to thereby move the hook plate or support plate portion up or down in the slot formed between two bar structures on the bracket portion of the gantry leveling mechanism.
Accordingly, a light fixture that is supported by the suspension cable and attached to the gantry leveling mechanism is moved up and down relative to the attached junction box or attached LED diver box and the ceiling structure. A leveling mechanism for a light fixture can include any number of gantry leveling mechanisms described above that are suitable the light fixture being used.
In accordance with further embodiments of the invention an LED light fixture, that is coupled to and suspended from the LED driver box is formed from modular lighting units or lighting elements. A lighting element includes a housing, one or more diffusion lenses and a linear array of LEDs. The linear arrays of LEDs include, for example 20 or more light emitting diodes that each use 0.2 watts or less of electrical power. The system can also include a controller or dimming circuit to provide dimming control of light emitted from the linear arrays of LEDs. Where the LED light fixture provides both upward lighting and downward light, the controller or dimming circuit is configured to provide independent control of the upward lighting and downward light emitted from the linear arrays of LEDs.
The lighting elements of the present invention are used to make light fixtures having any number of geometric shapes including, but not limited to square, rectangular, triangular, pentagonal and hexagonal shapes, to name a few. As described above, the lighting elements are configured to provide, upward light, downward light or any combination thereof. Additional features of LED light fixtures formed from the lighting elements are described in U.S. patent Ser. No. 13/507,542, filed Jul. 9, 2012 and titled “LIGHT EMITTING DIODE LUMINAIRE DEVICE AND SYSTEM” and the Provisional Patent Application No. 61/796,717, filed Nov. 19, 2012 and titled “LED LUMINAIRE DEVICE AND SYSTEM,” the contents of which are both hereby incorporated by reference.
The LED light fixture 124 includes a housing 120, one or more diffusion lenses 106 and 106′ and linear arrays of LEDs 104 and 104′. The linear arrays of LEDs 104 and 104′ include, for example 20 or more light emitting diodes that each use 0.2 watts or less of electrical power. The system 100 can also include a controller or dimming circuit 118 to provide dimming control of light emitted from the linear arrays of LEDs 104 and 104′. Where the and linear arrays of LEDs 104 and 104′ provides both upward lighting and downward light, the controller or dimming circuit 118 is configured to provide independent control of the upward lighting and downward lighting emitted from the linear arrays of LEDs 104 and 104′.
The control controller or dimming circuit 118 and the LED driver or driver circuit 116 are electrically coupled to a load circuit 112 for providing direct current power to the LED light fixture 124 through the LED driver or driver circuit 116. In accordance with the embodiments of the invention, the system 100 includes suspension mechanisms for suspending the LED light fixture 124 from the LED driver boxes 108 and 108′. The suspension mechanisms include, for example suspension cables 110 and 110′ and leveling mechanisms 131 and 131′, such as a gantry leveling mechanism illustrated in
In this embodiment the suspension cable 110 is also a direct current positive conductor that feeds from one end of the LED light fixture to route direct current to a direct current negative conductor 110′ through the plenum at an opposite end of the LED light fixture 124. The system 100 can also include a back-up battery 114, either within the LED driver box 108 or outside of the LED driver box 108. The back-up battery 114 is coupled to the power-feed suspension mechanism 110 and 110′ for providing power to the LED light fixture 124 in the event of a power failure.
The LED driver box 102 of the present invention also includes a ventricle support bracket 105 for attaching to a building structure to provide additional vertical support for the LED driver box 102 with an LED light fixture attached to the LED driver box 101 through, for example a suspension cable 107. The LED driver box 102 can also include mechanism to attach and secure the LED driver box to one or more T-bar supports 109 of a suspended ceiling and or one or more ceiling joists.
The power-feed suspension mechanism includes at least one suspension cable 508 that provides a direct current positive conductor and a direct current negative conductor for providing power to the LED light fixture 503. Alternatively, any of the other suspension cables 507, 507′, 507″ can have a direct current positive conductor and/or direct current negative conductor for providing power to the LED light fixture 503. While the power-feed suspension mechanism is shown here with four suspension cables, the lighting system 500 of the present invention is preferably adaptable to have a power-feed suspension mechanism with one to four suspension cables.
As described above, the LED driver box 502 includes one or more LED drivers or driver circuits for powering the LED light fixture 503 through the power-feed suspension mechanism. The LED driver box 502 has one or more service doors or service plates 511 to access and/or service the LED drivers and any electrical connections contained within the LED driver box 502. The LED driver box 502 is configured to couple to expandable horizontal support bars 519 and 519′ for attaching to T-bar supports 509 and 509′ or ceiling joists, such as described previously.
The gantry leveling mechanism also has a treaded screw feature 731 that fits through a hole on a bottom surface 714 of the bracket portion 701 and threads into the threaded hole 715 on the tab structure 713 of the hook plate or support plate portion 703. The threaded screw feature 731 then terminates through a treaded nut feature 717 on a top surface 721 of the bracket portion 701.
In operation the threaded screw feature 731 is turned cock-wise or counter clock-wise from a tool fitted end 733 of the threaded screw feature 731 at or near the bottom surface of the surface 714 of the bracket portion 701 using, for example, a screw driver or allen wrench, to thereby move the hook plate or support plate portion 703 up or down in the slot formed between two bar structures 718 and 719 on the bracket portion 701 of the gantry leveling mechanism.
Accordingly, a light fixture that is supported to the suspension cable 709 attached to the gantry leveling mechanism is moved up and down relative to the attached junction box or attached LED diver box and the ceiling. A leveling mechanism for a light fixture can include any number of gantry leveling mechanisms described above that are suitable for the light fixture being used.
Referring to
Referring to
The junction boxes 1103 and 1103′, angled LED driver junction boxes 1105 and 1105′, high-volume LED driver junction boxes 1107 and 1107′, and low-profile LED driver junction box 1109 described above can includes any suitable number of gantry leveling mechanisms, such as described with reference to
The present invention provides a number of advantages overt prior art LED lighting systems. The recessed or low-profile driver box is de-coupled or separate from any LED light fixture that it provides power for. This allows for easy servicing of the LED drivers and the wiring within the LED driver box through service doors, panels or plates. Also, the LED light fixture is easy to service since the LED light fixture has minimal wiring and the linear arrays of LEDs withing the light fixture can be replaced when they fail. The position of the LED light fixture and the height of the LED light fixture is easily adjusted through suspension cables coupled to a junction box structure through gantry leveling mechanism described above. The LED driver box is readily adapted for one, two, three, four or more suspension cable configurations for supporting a variety of different LED light fixtures and/or for providing power to LED light fixtures through an integrated power-feed suspension mechanism.
The present invention has been described in terms of specific embodiments incorporating details to facilitate the understanding of the principles of construction and operation of the invention. As such, references herein to specific embodiments and details thereof are not intended to limit the scope of the claims appended hereto. It will be apparent to those skilled in the art that modifications can be made in the embodiments chosen for illustration without departing from the spirit and scope of the invention.
Aziz, David Daoud, Mellor, Jeffry
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Executed on | Assignor | Assignee | Conveyance | Frame | Reel | Doc |
Jan 25 2018 | FINELITE INC. | (assignment on the face of the patent) | / | |||
Jul 09 2018 | MELLOR, JEFFRY | Finelite Inc | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 046581 | /0374 | |
Jul 09 2018 | AZIZ, DAVID DAOUD | Finelite Inc | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 046581 | /0374 |
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